Supply of Model F-90sa Organic Fertilizer Equipment for Rapid Sludge Fermentation Without Added Excipients
The daily input of materials into the fermentation system is 20t. Configure 2 fermentation silos. The rapid fermentation time is over 48 hours. After leaving the tank, the materials are loose and do not require secondary fermentation, and can be used as organic fertilizer.
As an independent subsystem, the fermentation system includes a necessary aeration and oxygenation system, heating system, stirring system, temperature and humidity monitoring and control system, electrical and PLC control system. (Unnecessary systems can be omitted.)
Conditions: The fermentation equipment is placed in a workshop with a height of about 10m. The workshop is equipped with a deodorization system and a sewage treatment system, so the fermentation system does not need to be separately installed.
The supplier of the fermentation system shall provide a detailed plan (including process description, equipment introduction, installed power, operating cost analysis, equipment dimensions, layout, etc.) and a quotation;
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https://fhhbgf.cn.china.cn/supply/4159625412.html
Design principles
1) Comply with the laws, standards and regulations formulated by the state for environmental protection and urban sewage treatment, and obey the overall planning of Party A. Implement various relevant standards and regulations to ensure that the sewage meets the standards for discharge after treatment.Party A and implement various relevant standards and regulations to ensure that the sewage meets the standards for discharge after treatment.Discharge.
2) Select the sewage treatment process according to local conditions, and specifically choose the treatment process suitable for the characteristics of the sewage. Make the technology advanced, practical, safe and reliable, with stable treatment effects. Ensure that the water quality meets the standards after treatment and reduce the floor area.
3) Minimize the adverse impact of the sewage treatment station on the surrounding environment and prevent secondary pollution.
4) Appropriately consider automated operation to simplify operation management, reduce the labor intensity of workers, and facilitate maintenance.
5) Implement the design principle of emphasizing both economy and reliability. Reasonably reduce the project cost and operating expenses, improve the project benefits. At the same time, improve the reliability and stability of the system as much as possible, save energy, with less project investment, small floor area and quick results.
6) Try to use new materials and new products to extend the service life of the equipment.
7) Before the design of the sewage treatment station, the water quality, water volume, discharge situation and treatment requirements of the sewage discharge must be proposed or investigated. When there is a lack of measured data, it can be referred to similar ones according to the scale, nature, location, population of the breeding farmBreeding farm and other factors. Slaughterhouse, or design with reference to conventional data.
Design basis
1)Party AProvided relevant technical parameters and design requirements.
2) "Environmental Protection Law of the People's Republic of China"
3) "Water Pollution Prevention and Control Law of the People's Republic of China"
4)"Discharge Standard for Pollutants in Breeding Wastewater"(GB13457-92);
5) "Urban Regional Environmental Noise Standard" (GB3096-93);
6) "Integrated Wastewater Discharge Standard" (GB8979-1996)
7)Code for Design of Outdoor Wastewater EngineeringGB50014-2006;
8)Code for Design of Building Water Supply and Drainage (GB50015-2003);
9)Code for Design of Water Supply and Sewerage Engineering Structures (GBJ69--84);
¸10)Code for Design of Building Foundation(GBJ147-89);
11)Code for Design of Concrete Structures(GBJ17-88);
12)Code for Construction and Acceptance of Water Supply and Sewerage Works (GBJ141-90);
13)Code for construction and acceptance of water supply and drainage pipeline engineering (GB50268-97);
14)Code for construction and acceptance of underground waterproof engineeringGBJ208-83;
15)Code for construction and acceptance of building foundation and foundation engineering (GB50202-2002);
16)Code for acceptance of construction quality of concrete structure engineering (GB50204-2002);
17)Code for acceptance of construction quality of underground waterproof engineering (GB50208-2002);
18)Code for acceptance of construction quality of building ground engineering (GB50209-2002);
19)Code for design of low-voltage power distribution (GB50054-95);
20)Code for design of power supply and distribution systems (GB50052-95);
21) Standard for water used in concrete (JGJ63-2006)
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